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          <td class="table_head">发表论文 Publications</td>
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            <li><strong><u>Zong, C.,</u></strong> Fang, L., Song, F., Wang, A., Wan, Y., &ldquo;Fluorescent Fingerprint Bacteria by  Multi-channel Magnetic Fluorescent Nanosensor.&rdquo; <em>Sensors and Actuators B: Chemical</em>. <strong>2019</strong>, <em>289</em>, 234-241. </li>
            <li><strong><u>Zong, C.;</u></strong> Venot, A., Li, X.; Lu, W; Xiao, W.; Wilkes, J-W; Salanga,  C-L.; Handel, T-M.; Wang, L.; Wolfert, M-A.; Boons, G-J., &ldquo;A Heparan Sulfate  Microarray Reveals that Heparan Sulfate-Protein Binding Exhibit Different  Ligand Requirements.&rdquo; <em>Journal  of the American Chemical Society</em>, <strong>2017</strong>, 139,  9534-9543 </li>
            <li><strong><u>Zong, C.;</u></strong> Huang, R.; Condac, E.; Chiu, Y.; Xiao, W.; Li, X.; Lu, W.;  Ishihara, M.; Wang, S.; Ramiah, A.; Stickney, M.; Azadi,&nbsp;P.; Amster,&nbsp;I-J.;  Moremen, K-W.;&nbsp;Wang, L.;&nbsp;Sharp, J-S.; Boons, G-J.,  &ldquo;Integrated Approach to Identify Heparan Sulfate Ligand Requirements of Robo1.&rdquo; <em>Journal </em>of the American Chemical Society, 2016, 138,  13059-13067</li>
            <li>Zong,  C.; Venot, A.; Dhamale, O-P.; Boons, G-J., &ldquo;Fluorous supported modular  synthesis of heparan sulfate oligosaccharides&rdquo; Org. Lett.,&nbsp;2013,&nbsp;15,  342–345.</li>
            <li>Zong,  C.; Li, Z.; Sun, T.; Wang, P.; Li, Y., &ldquo;Convenient Synthesis of Sulfated  Oligofucosides&rdquo; Carbohydr. Res. 2010. 11, 1522-1532.</li>
            <li>Lu, W.;  Zong, C.; Chopra, P.; Pepi, L.E.; Xu, Y.; Liu, J.; Boons, G-J. &ldquo;Controlled  chemoenzymatic synthesis of heparan sulfate oligosaccharide. &rdquo; Angewandte  Chemie, 2018, 57, 5340-5344. </li>
            <li>Capicciotti,  C. J., Zong, C., Sheikh, M. O., Sun, T., Wells, L., &amp; Boons, G-J.  &quot;Cell-Surface Glyco-Engineering by Exogenous Enzymatic Transfer using a  Bi-Functional CMP-Neu5Ac Derivative.&quot;&nbsp;Journal of the American  Chemical Society, 2017, 139, 13342-13348.</li>
            <li>Huang,  R.; Zong, C.; Venot A.; Chiu, Y.; Zhou, D.; Boons G-J.; Sharp, J., &quot;The de  novo Sequencing of Complex Mixtures of Heparan Sulfate  Oligosaccharides.&quot;&nbsp;Analytical Chemistry, 2016, 88, 5299-5307</li>
            <li>Dhamale,  O-P.; Zong, C.; Al-Mafraji, K.; Boons, G-J., &ldquo;New Glucuronic Acid Donors for  the Modular Synthesis of Heparan Sulfate Oligosaccharides&rdquo; Organic &amp;  Biomolecular Chemistry,&nbsp;2014, 12, 2087-2098.</li>
            <li>Zhang,  Z.; Zong, C.; Song, G.; Lv, G.; Chun, Y.; Wang, P.; Ding, N.; Li, Y., &ldquo;Total  Synthesis of Caminoside B, a Novel Antimicrobial Glycolipid Isolated From the  Marine Sponge Caminus Sphaeroconia&rdquo; Carbohydr. Res. 2010, 6, 750-760.</li>
            <li>Gao, Q.;  Chen, C.Y.; Zong, C.; Wang, S.; Ramiah, A.; Prabhakar, P.; Morris, L.C.; Boons,  G.J.; Moremen, K.W.; Prestegard, J.H., &ldquo;Structural Aspects of Heparan Sulfate  Binding to Robo1–Ig1–2.&rdquo;&nbsp;ACS Chemical Biology, 2016, 11, 3106-3113.</li>
            <li>Huang,  Y.; Mao, Y.; Zong, C.; Lin, C.; Boons, G-J.; Zaia, J., &ldquo;Discovery of a Heparan  Sulfate 3-O-Sulfation Specific Peeling Reaction&rdquo;  Analytical Chemistry, 2015, 87, 592-600.</li>
            <li>Sun, T.;  Yu, S.-H.; Zhao, P.; Meng, L.; Moremen, K.-W.; Wells, L.; Steet, R.; Boons,  G.-J., One-Step Selective Exoenzymatic Labeling (SEEL) Strategy for the  Biotinylation and Identification of Glycoproteins of Living Cells. J. Am. Chem.  Soc., 2016, 138, 11575−11582.</li>
            <li>Sun, T.;  Zhang, W.; Zong, C.; Wang, P.; Li, Y., First total synthesis and stereochemical  reassignment of tasiamide B, J. Pept. Sci., 2010, 16, 364–374.</li>
            <li>Hudlikar, M.-S.; Li, X; Sun, T.; Liu, L.; Sirohiwal, A.;  Wolfert, M.A.; Boons, G.-J., Glycoengineering Enables the Preparation of Dual  Antibody-Drug Conjugates to Overcome Multidrug-Resistance of Cancer Cells.  &nbsp;Angewandte Chemie, submitted.</li>
            <li>Yu, S.H., Zhao, P., Prabhakar, P.K., Sun, T., Beedle, A.,  Boons, G.J., Moremen, K.W., Wells, L. and Steet, R.,. Defective mucin-type  glycosylation on α-dystroglycan in COG-deficient cells increases its  susceptibility to bacterial proteases.&nbsp;J. Biol. Chem.,&nbsp;2018, 293,  14534-14544.</li>
            <li>	Yu, S.-H.; Zhao, P.; Sun, T.; Gao, Z.; Moremen, K.-W.; Boons, G.-J.; Wells, L.; Steet, R., Selective exo-enzymatic labeling detects increased cell surface sialoglycoprotein expression upon megakaryocytic differentiation. J. Biol. Chem., 2016, 291, 3982–3989.</li>
            <li>Zhang,  W.; Sun, T.; Ma, Z.; Li, Y., Design, Synthesis and Biological Evaluation of  Tasiamide Analogues as Tumor Inhibitors. Mar. Drugs, 2014, 12, 2308–2325.</li>
            <li>Zhang,  W.; Sun, T.; Li, Y., Synthesis of the C-terminal pentapeptide of the peptaibol  culicinins. Journal of Peptide Sci., 2009, 15, 366–368.</li>
            <li>hang, W.; Sun, T.; Mei, D.; Wang, J.; Li, Y., Synthesis of  protected (2S,4R)-2-amino-4-methyldecanoic acid, a proposed component of  culicinins. Chin. Chem. Let., 2008, 19, 1068–1070.            </li>
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